从雄心到实施:制度化是德国可持续交通转型的关键挑战

IF 4.6 3区 工程技术 Q2 ENERGY & FUELS
Max Reichenbach, Torsten Fleischer
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引用次数: 0

摘要

交通和机动性在温室气体排放中占很大比例,为了实现可持续发展目标,必须减少化石燃料的消耗。加强公共交通是必要的移动性转型的关键要素,包括技术创新。为了解决相关的制度化进程,我们分析了技术发展与日益激烈的流动性转型辩论之间的相互作用。我们将重点关注公共交通专业人员所面临的挑战,他们对于在地方层面实施可持续交通措施至关重要。案例选择和方法我们提出了两个案例:首先,我们将城市索道作为扩展公共交通网络的增量选择。在三场专家研讨会(共23人参加)中,当地公共交通专业人士讨论了城市索道的潜力,以及有关制度框架的挑战。其次,我们选择了一种探索性的方法来了解公共交通专业人士如何参与关于自动驾驶在未来公共交通中潜在破坏性作用的辩论。这包括对战略文件和试验的分析,以及在部门活动和利益攸关方论坛上的观察。在这两种情况下,我们都将重点放在德国的具体背景上,这确保了一个连贯的制度框架和一致的分析。结果我们发现公共交通专业人员在考虑成熟的城市索道技术的潜力方面普遍持开放态度。但是,在规划工具和严格管制的公共交通规划制度方面仍然存在重大差距。关于自动驾驶,在相关的交通政策辩论中可以观察到强烈的技术焦点。在地方一级,尽管进行了许多技术测试,但几乎没有讨论将技术纳入机动系统以确保实现面向可持续性的目标的更深远的要求。除了渐进式和潜在的破坏性技术驱动因素外,相应制度化过程的前瞻性和针对性设计被证明是实现可持续移动转型的关键挑战。制度化和公共交通专业人员的相关角色必须考虑到移动性转型的实质性目标和相关的政治话语。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From ambition to implementation: institutionalisation as a key challenge for a sustainable mobility transition in Germany

Background

Transport and mobility contribute a significant share of greenhouse gas emissions, and fossil fuel consumption must be reduced for mobility to meet sustainable development goals. Strengthening public transport is a key element of the required mobility transition, including technological innovation. To address the related institutionalisation processes, we analyse the interplay between technological development and the intensifying mobility transition debate. We focus on the challenges for the roles of public transport professionals, who are essential for the implementation of sustainable mobility measures at the local level.

Case selection and methods

We present two cases: First, we address urban ropeways as an incremental option to extend public transport networks. In a series of three expert workshops (23 participants in total), local public transport professionals discussed the potential of urban ropeways, and challenges concerning the related institutional framework. Second, we chose an exploratory approach to understand how public transport professionals engage in the debate on the potentially disruptive role of automated driving in the future of public transport. This included an analysis of strategy documents and experimentation, as well as observations at sectoral events and stakeholder forums. In both cases, we focus on the specific context in Germany, which ensures a coherent institutional framework and a consistent analysis.

Results

We found a general openness among public transport professionals to consider the potential of mature urban ropeway technology. However, critical gaps remain in planning instruments and the densely regulated public transport planning regime. Concerning automated driving, a strong technological focus can be observed in the related transport policy debate. At the local level, despite numerous technical tests, there is hardly any discussion of more far-reaching requirements regarding integration of the technology into the mobility system in a way that ensures sustainability-oriented goals are met.

Conclusions

Beyond both incremental and potentially disruptive technological drivers, the proactive and targeted design of corresponding institutionalisation processes proves to be a key challenge for achieving a sustainable mobility transition. Institutionalisation and the related roles of public transport professionals must be considered in relation to the mobility transition’s substantive goals and the associated political discourse.

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来源期刊
Energy, Sustainability and Society
Energy, Sustainability and Society Energy-Energy Engineering and Power Technology
CiteScore
9.60
自引率
4.10%
发文量
45
审稿时长
13 weeks
期刊介绍: Energy, Sustainability and Society is a peer-reviewed open access journal published under the brand SpringerOpen. It covers topics ranging from scientific research to innovative approaches for technology implementation to analysis of economic, social and environmental impacts of sustainable energy systems.
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